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◆ Journal of Agricultural and Food Chemistry2026-02-28· Ascorbic acid

Mechanistic Insights into Lotus Rhizome Bluing: In Situ Visualization and Molecular Identification of Polyphenol-Iron Chelates in Damaged Cells

Xianqiang Chen, Xingyou Fang, Jie Li, Shoulei Yan

原始摘要(英文原文)· Original abstract
The blue stain of lotus rhizome, a major postharvest issue, is hypothesized to result from polyphenol-iron complexation; however, direct in situ evidence and molecular-level identification of the pigments have been lacking. This study employed a multimodal analytical approach to unravel this process from the cellular to the molecular level. Transmission electron microscope and electrolyte leakage results demonstrated that cellular damage was a prerequisite, enabling the colocalization of polyphenols and Fe 3+ at lesion sites, as visualized by scanning electron microscopy with energy-dispersive X-ray spectroscopy and confocal fluorescence microscopy. Raman spectroscopy and X-ray photoelectron spectroscopy verified complex formation, while mass spectrometry identified specific chelates. The mechanism involves polyphenol-mediated reduction of Fe 3+ followed by chelation. Ascorbic acid effectively mitigated bluing by competitively reducing/chelating Fe 3+, disrupting this redox cycle. This work definitively establishes the mechanism and proposes ascorbic acid as a viable antidiscoloration strategy.
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Mechanistic Insights into Lotus Rhizome Bluing: In Situ Visualization and Molecular Identification of Polyphenol-Iron Chelates in Damaged Cells — 科研速览 Science Skim